Technological Procedure for the Manufacture of Products Using Felling Residues
DOI:
https://doi.org/10.37482/0536-1036-2023-1-153-171Keywords:
felling residues, availability of wood resources, commercial yield portfolio, graphanalytical model, technological process, technological chain, dynamic conditions, processing of felling residuesAbstract
Increasing the profit received from 1 hectare of the developed forest area is one of the priority tasks of the forest industry today. This parameter describes the efficiency of forest management and affects the availability of wood resources. One of the possible solutions of this issue is the development of effective technological chains of manufacturing commodity products from wood felling residues. Currently, there are ample opportunities to obtain various products from harvested wood, including wastes from its logging and processing. The product range is significantly differentiated by cost and selling price. In Russia one of the important factors is the demand for certain types of products from wood resources, which is significantly inferior in its volume to foreign markets. Costs related to the manufacturing process are the most significant in the structure of production costs. Meanwhile, expenses may vary dramatically depending on the chosen technology, logistics, and specific production conditions in terms of the formation sources and specific weight in the overall structure. The set of factors that influence the choice of the type of products to be produced and, ultimately, the reasonable portfolio of commodity products, is not easy to consider in the issues of optimization. The study aims at forming a technological chain of processing felling residues at the stage of logging operations with obtaining an effective portfolio of commodity products under dynamic natural and production conditions. We propose to apply a graph-analytical model, in which the peaks of the graph are the cutting area, production operations, and а consumer. The arcs of this model are characterized by the carrying capacity limited by the productivity or volume of raw materials available for the operation, as well as the labor and costs (variable and constant). It should be mentioned that fixed costs arise primarily in the wood storage. A distinctive feature of the proposed model is the accounting of irrecoverable losses resulting from certain production operations and from the longterm storage of timber used for manufacturing commodity products including the costs of their disposal. The proposed graph-analytical model and procedure for solving the problem will allow determining the optimal technological chains of processing of wood felling residues with obtaining a commercial yield portfolio.
For citation: Mokhirev A.P., Rukomojnikov K.P., Gerasimova M.М., Medvedev S.O., Zyryanov M.A. Technological Procedure for the Manufacture of Products Using Felling Res-idues. Lesnoy Zhurnal = Russian Forestry Journal, 2023, no. 1, pp. 153–171. (In Russ.). https://doi.org/10.37482/0536-1036-2023-1-153-171
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Беляков С.Л., Белякова М.Л., Боженюк А.В., Савельева М.Н. Оптимизация потоков в транспортных системах // Изв. ЮФУ. Техн. науки. 2014. № 5(154). С. 161–167. Belyakov S.L., Belyakova M.L., Bozhenyuk A.V., Savelyeva M.N. Optimization of Flows in Transport Systems. Izvestiya SFedU. Engineering Sciences, 2014, no. 5(154), pp. 161–167. (In Russ.).
Бурмистрова О.Н., Пильник Ю.Н., Мотрюк Е.Н. Математическая модель оптимального использования древесных отходов // Актуальные направления научных исследований XXI века: теория и практика. 2015. Т. 3, № 2-1(13-1). С. 179–182. Burmistrova O.N., Pil’nik Yu.N., Motryuk E.N. Mathematical Model of Optimum Use of Wood Waste. Current Directions of Scientific Research of the XXI Century: Theory and Practice, 2015, vol. 3, no. 2-1(13-1), pp. 179–182. (In Russ.). https://doi.org/10.12737/10112
Каракчиева И.В., Чумаченко С.И. Система оценки экономической доходности древесных ресурсов леса и экономической доступности лесных участков // Фундаментальные исследования. 2016. № 7-2. С. 372–377. Karakchieva I.V., Chumachenko С.I. System of the Assessment of Economic Profita-bility of Wood Resources of the Wood and Economic Availability of the Timberland. Funda-mental Research, 2016, no. 7-2, pp. 372–377. (In Russ.).
Кириллов Ю.В. Многокритериальное моделирование как основа информационных технологий поддержки принятия решений // Фундаментальные исследования. 2004. № 6. С. 114–116. Kirillov Yu.V. Multicriteria Modeling as the Basis of Information Technology for De-cision Support. Fundamental Research, 2004, no. 6, pp. 114–116. (In Russ.).
Куницкая О.А., Григорьев И.В. Перспективы увеличения объемов лесоэксплуатации за счет низкотоварной древесины // Актуальные направления научных исследований XXI века: теория и практика. 2014. № 3-2(8-2). С. 104–107. Kunitskaya O.A. Grigorev I.V. Prospects for Increasing the Volume of Forest Exploi-tation due to Low Commodity Wood. Current Directions of Scientific Research of the XXI Century: Theory and Practice, 2014, no. 3-2(8-2), pp. 104–107. (In Russ.). https://doi.org/10.12737/3933
Лукаш А.А., Матрос В.А., Шитикова А.С., Черенкова М.С. Повышение эффективности организации за счет производства экологически безопасных видов строительных материалов из древесины // Экономика и эффективность организации производства. 2016. № 24. С. 120–124. Lukash А.А., Matros V.А., Shitikova А.S., Cherenkova M.S. Improving the Efficiency of the Organization Through the Production of Environmentally Safety Kinds of Building Materials Made Wood. Ekonomika i effektivnost’ organizatsii proizvodstva, 2016, no. 24, pp. 120–124. (In Russ.).
Мохирев А.П. Моделирование процесса работы машины для сортировки и транспортировки порубочных остатков на лесосеке // Системы. Методы. Технологии. 2016. № 1(29). С. 89–94. Mokhirev A.P. Process Modeling for the Machine for Sorting and Transporting Felling Residues on the Cutting Area. Systems. Methods. Technologies, 2016, no. 1(29), pp. 89–94. (In Russ.). https://doi.org/10.18324/2077-5415-2016-1-89-94
Мохирев А.П., Рукомойников К.П. Моделирование структуры лесотранспортных потоков: моногр. Йошкар-Ола: ПГТУ, 2022. 396 с. Mokhirev A.P., Rukomojnikov K.P. Modeling the Structure of Forest Transport Flows: Monograph. Yoshkar-Ola, VSUT Publ., 2022. 396 p. (In Russ.).
Рукомойников К.П., Мохирев А.П. Обоснование технологической схемы лесозаготовительных работ путем создания динамической модели функционирования предприятия // Изв. вузов. Лесн. журн. 2019. № 4. С. 94–107. Rukomojnikov K.P., Mokhirev A.P. Validation of the Logging Operations Scheme Through the Creation of Dynamical Model of the Enterprise Functioning. Lesnoy Zhurnal = Russian Forestry Journal, 2019, no. 4, pp. 94–107. (In Russ.). https://doi.org/10.17238/issn0536-1036.2019.4.94
Суханов Ю.В., Герасимов Ю.Ю., Селиверстов А.А., Соколов А.П. Технологические цепочки и системы машин для сбора и переработки древесной биомассы в топливную щепу при сплошнолесосечной заготовке в сортиментах // Системы. Методы. Технологии. 2011. № 4. С. 101–107. Sukhanov Yu.V., Gerasimov Yu.Yu., Seliverstov A.A., Sokolov A.P. Technological Chains and Machines Systems for Collecting and Processing Woody Biomass into Fuel Chips in Clear-Cutting Harvesting by Cut-to-Lengths. Systems. Methods. Technologies, 2011, no. 4, pp. 101–107. (In Russ.).
Третьяков А.Г. Экономическая доступность лесных ресурсов: факторы, ее определяющие, и достоверность оценки // Лесотехн. журн. 2015. № 1(17). С. 274–287. Tretyakov A.G. Economic Accessibility of Forest Resources: Its Determining Factors and the Accuracy of the Estimates. Forestry Engineering Journal, 2015, no. 1(17), pp. 274–287. (In Russ.). https://doi.org/10.12737/11285
Тринеева Л.Т., Камнева В.А. Формирование сбытовой политики предприятия на основе экономико-математических методов // Технологии пищевой и перерабатывающей промышленности АПК – продукты здорового питания. 2015. № 2(6). С. 83–88. Trineeva L.T., Kamneva V.A. Formation of Marketing Policy of the Enterprise on the Basis of Economic and Mathematical Methods. Tekhnologii pishchevoy i pererabatyvayush-chey promyshlennosti APK – produkty zdorovogo pitaniya, 2015, no. 2(6), pp. 83–88. (In Russ.).
Шегельман И.Р. Обоснование технологических и технических решений для перспективных технологических процессов подготовки биомассы дерева к переработке на щепу: автореф. дис. … д-ра техн. наук. СПб., 1997. 36 с. Shegelman I.R. Substantiation of Technological and Technical Solutions for Promis-ing Technological Processes of Preparing Wood Biomass for Processing to Wood Chips: Dr. Eng. Sci. Abs. Saint Petersburg, 1997. 36 p. (In Russ.).
Шегельман И.Р., Рудаков М.Н. Рациональное природопользование в свете ресурсной концепции стратегического менеджмента // Север и рынок: формирование экономического порядка. 2014. № 3(40). С. 214–216. Shegelman I.R., Rudakov M.N. Sustainable Nature Management in the Context of the Resource Concept of Strategic Management. Sever i rynok: formirovanie ekonomicheskogo poryadka, 2014, no. 3(40), pp. 214–216. (In Russ.).
Щукин П.О., Демчук А.В., Будник П.В. Повышение эффективности переработки вторичных ресурсов лесозаготовок на топливную щепу // Инж. вестн. Дона. 2012. № 3. С. 395–398. Shchukin P.O., Demchuk A.V., Budnik P.V. Improving the Efficiency of Processing Secondary Logging Resources for Fuel Chips. Engineering Journal of Don, 2012, no. 3, pp. 395–398. (In Russ.).
Bellman R. On a Routing Problem. Quarterly of Applied Mathematics, 1958, no. 16, pp. 87–90. https://doi.org/10.1090/qam/102435
Bozhenyuk A., Gerasimenko E., Rozenberg I. The Methods of Maximum Flow and Minimum Cost Flow Finding in Fuzzy Network. Proceedings of the CDUD 2012 – Con-cept Discovery in Unstructured Data. Leuven, Belgium, 2012, pp. 1–12.
Dijkstra E.W. A Note on Two Problem in Connection with Graphs. Numerische Mathematik, 1959, vol. 1, pp. 269–271. https://doi.org/10.1007/BF01386390
Floyd R.W. Algorithm 97 – Shortest Path. Communications of the ACM, 1962, vol. 5, iss. 6, pp. 344–348. https://doi.org/10.1145/367766.368168
Gerasimov Yu., Senko S., Karjalainen T. Nordic Forest Energy Solutions in the Republic of Karelia. Forests, 2013, vol. 4, iss. 4, pp. 945–967. https://doi.org/10.3390/f4040945
Jourgholami M., Abdi E., Chung W. Decision Making in Forest Road Planning Considering Both Skidding and Road Costs: A Case Study in the Hyrcanian Forest in Iran. iForest − Biogeosciences and Forestry, 2013, vol. 6, iss. 2, pp. 59–64. https://doi.org/10.3832/ifor0640-006
Karjalainen T., Asikainen A., Ilavsky J., Zamboni R., Hotari K.-E., Röser D. Esti-mation of Energy Wood Potential in Europe. Working Papers of the Finnish Forest Research Institute. Helsinki, METLA, 2004. 43 p. Available at: http://www.metla.fi/julkaisut/workingpapers/2004/mwp006.htm
Mokhirev A., Gerasimova M., Pozdnyakova M. Finding the optimal route of wood transportation. IOP Conference Series: Earth and Environmental Science, 2019, vol. 226, art. 012053. https://doi.org/10.1088/1755-1315/226/1/012053
Mokhirev A., Rukomojnikov K. Graphic-Analytical Modelling of Technological Chain of Logging Operations in Dynamic Natural and Production Conditions. IOP Confer-ence Series: Earth and Environmental Science, 2019, vol. 316, art. 012039. https://doi.org/10.1088/1755-1315/316/1/012039
Moore E.F. The Shortest Path through a Maze. Proceedings of the International Symposium on Theory of Switching. Cambridge, MA, Harvard University Press, 1957, pp. 285–292.
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Copyright (c) 2023 А.П. Мохирев, К.П. Рукомойников, М.М. Герасимова, С.О. Медведев, М.А. Зырянов (Автор)
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